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Investigating the mechanism of two synthetic proteins found to rescue E. coli auxotrophic strains: DeltagltA and Deltafes.

机译:研究发现两种可拯救大肠杆菌营养缺陷型菌株的合成蛋白的机理:DeltagltA和Deltafes。

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摘要

Are functional proteins difficult to create in the laboratory from scratch? To probe this question, we created and tested a combinatorial library of de novo proteins in a gene knockout experiment. Bacterial strains lacking genes essential for survival on minimal media were transformed with the library and screened for growth. Six strains including DeltagltA and Deltafes were rescued by de novo sequences. DeltagltA is deficient of the enzyme citrate synthase in the citric acid cycle and Deltafes is deficient of the enzyme enterobactin esterase which is involved in iron acquisition. The mechanisms of rescue of these two auxotrophs by de novo sequences were investigated in this research.;Chapter 2 focuses on the rescue protein for DeltagltA, named synGltA. synGltA was tested for its role in conferring life to a glutamate deficient cell. The sequence was determined to be important, based on alanine mutations, and it was also evolved into a more functional sequence. It was found that the protein was not bypassing the natural reaction of gltA, indeed, the expression of synGltA enabled citrate production. It was also found that purified protein was unable to catalyze citrate production alone, meaning that other proteins were involved in rescue in vivo. Protein partners were investigated for synGltA, and two proteins were found to be necessary for the rescue of DeltagltA by synGltA. Together, these findings lay the groundwork for showing that synGltA, a de novo protein, has a meaningful function in DeltagltA rescue.;Chapter 3 focuses on one of the rescue proteins for Deltafes , named synFes2. synFes2 was probed directly for its ability to enable iron acquisition. It was found that synFes2 expression produced dramatically red cells. This red phenotype was found to be due to an accumulation of ferric enterobactin, a substrate of the wild type fes protein. Testing of different growth conditions and cell variants determined that this accumulation was due to more import of ferric enterobactin. Investigating the function of synFes2 suggested that the protein was not capable of hydrolyzing ferric enterobactin. synFes2 was also not found to significantly bind iron or enterobactin compared to a control. These findings suggest that synFes2 is functioning with other proteins to import more ferric enterobactin.
机译:功能蛋白难于在实验室中从头开始产生吗?为了探究这个问题,我们在基因敲除实验中创建并测试了从头蛋白的组合文库。用该文库转化缺乏在基本培养基上存活所必需的基因的细菌菌株,并筛选其生长。从头序列拯救了包括DeltagltA和Deltafes在内的6个菌株。 DeltagltA在柠檬酸循环中缺乏柠檬酸合酶,而Deltafes则缺乏参与铁摄取的肠杆菌素酯酶。本研究研究了从头序列拯救这两种营养缺陷型的机制。第二章重点研究了DeltagltA的拯救蛋白synGltA。测试了synGltA在赋予谷氨酸缺乏细胞生命中的作用。基于丙氨酸突变,该序列被确定为重要序列,并且还进化为功能更强的序列。发现该蛋白质没有绕过gltA的自然反应,实际上,synGltA的表达使柠檬酸盐产生成为可能。还发现纯化的蛋白不能单独催化柠檬酸盐的产生,这意味着其他蛋白也参与体内的拯救。研究了蛋白质伴侣对synGltA的影响,发现两种蛋白对于synGltA拯救DeltagltA是必需的。总之,这些发现为证明从头蛋白synGltA在DeltagltA拯救中具有有意义的功能奠定了基础。第三章着重介绍了Deltafes的一种拯救蛋白,称为synFes2。对synFes2进行铁捕获的能力进行了直接调查。发现synFes2表达产生显着的红细胞。发现这种红色表型是由于肠肠铁蛋白(野生型fes蛋白的底物)的积累引起的。对不同生长条件和细胞变异的测试表明,这种积累是由于肠肠铁蛋白铁的更多进口所致。研究synFes2的功能表明该蛋白不能水解肠铁蛋白。与对照相比,也未发现synFes2显着结合铁或肠杆菌素。这些发现表明synFes2与其他蛋白质一起起作用,以输入更多的铁肠杆菌素。

著录项

  • 作者

    Korolev, Maria.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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